A vermin trap

By combining a foldable second trap with a guide channel, the problem of mice easily escaping from sticky traps was solved, thus improving the capture success rate.

CN224539254UActive Publication Date: 2026-07-24CANGZHOU JINGLONG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CANGZHOU JINGLONG TECH CO LTD
Filing Date
2025-09-03
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Existing sticky traps often result in mice easily jumping away from one side and escaping, leading to a low success rate in catching them.

Method used

A rodent-catching device was designed, comprising an integrally formed first catching part and a second catching part. The second catching part can rotate and fold to an upright state to form a physical barrier, which, combined with sticky material, captures the rodent and guides it into the containment tank through a guide channel.

Benefits of technology

It increases the success rate of mouse capture, prevents mice from escaping, and achieves a highly efficient mouse capture effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of insect and mouse trapping device, it is related to insect and mouse trapping instrument technical field, comprising: first insect and mouse trapping plate, first insect and mouse trapping plate includes: integrally formed first trapping part and second trapping part, second trapping part is provided with two, located the opposite sides of first trapping part and can be relative to first trapping part and be folded upwards;Wherein, first trapping part includes first base plate and the first protruding part of being set at first base plate top and head-to-tail connection, first protruding part is formed around first accommodating groove, and first accommodating groove is provided with sticky thing;Second trapping part includes second base plate and the second protruding part of being set at second base plate top and head-to-tail connection, second protruding part is formed around second accommodating groove, and second accommodating groove is provided with sticky thing, and the side of second base plate close to first base plate is provided with the first through slot for target insect to pass.
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Description

Technical Field

[0001] This utility model relates to the field of insect and rodent trapping equipment technology, and in particular to an insect and rodent trapping device. Background Technology

[0002] Insects and rodents are ubiquitous in living and production environments, easily damaging food, clothing, and furniture. They can also carry pathogens such as bacteria and viruses, spreading diseases and threatening human health and public health safety. This is especially true in catering, warehousing, grain storage, and medical facilities, where insects and rodents not only affect environmental hygiene but also cause food contamination and equipment damage. Existing control methods, such as chemical agents, pose risks of toxicity and environmental pollution, potentially harming humans and pets. Mechanical capture methods, such as mousetraps, are inherently dangerous and involve bloodshed, making them unsuitable for use in homes and public places. Therefore, sticky traps have become widely used.

[0003] However, although sticky traps are simple and inexpensive, when catching mice, they can easily jump and escape from one side of the trap, which reduces the success rate of catching mice. Utility Model Content

[0004] The purpose of this utility model is to address the defects and shortcomings of the existing technology by providing an insect and rodent trapping device, which solves at least one of the aforementioned technical problems. It has the advantage of increasing the success rate of rodent trapping without affecting insect trapping.

[0005] To achieve the above objectives, this utility model provides an insect and rodent trapping device, comprising: The first insect and rodent trapping plate includes: an integrally formed first trapping part and a second trapping part, wherein there are two second trapping parts located on opposite sides of the first trapping part and can rotate relative to the sides of the first trapping part. The first capturing part includes a first substrate and a first protrusion disposed on the top of the first substrate and connected end to end. The first protrusion surrounds to form a first receiving groove, and an adhesive is disposed in the first receiving groove. The second capturing part includes a second substrate and a second protrusion disposed on the top of the second substrate and connected end to end. The second protrusion surrounds to form a second receiving groove. An adhesive is disposed in the second receiving groove. A first passage groove for the target insect to pass through is disposed on the side of the second substrate near the first substrate. The second capturing part can be folded into an upright position. When a rodent steps into the first receiving groove, it will touch the sticky substance and be captured. As the rodent struggles to the sides of the first capturing part, it will touch the sticky substance in the second receiving groove, thus increasing the success rate of rodent capture. Once the target insect enters the first receiving groove through the first channel, it will be captured by the sticky substance. Optionally, multiple first channels are provided along the length of the second capturing part, and guide plates are provided on both sides of the first channel to guide the target insect into the first receiving groove.

[0006] Optionally, the outer sidewall of the first protrusion is formed with an inclined guide surface for guiding the target insect into the first receiving groove, and the inner sidewall of the first protrusion is a vertical wall to prevent the target insect from crawling out of the first receiving groove.

[0007] Optionally, both the first substrate and the second substrate have reinforcing ribs at their bottom.

[0008] Optionally, a socket and / or a connector adapted to the socket are provided at the corner of the second substrate, and the height of the socket is greater than the height of the second protrusion.

[0009] Optionally, a second insect and rodent trapping plate is included, which includes an integrally formed third trapping part and a fourth trapping part. The fourth trapping part has two parts, located on opposite sides of the third trapping part, and can be folded upward relative to the third trapping part. The third trapping part includes a third base plate and a third protrusion disposed on the top of the third base plate and connected end to end. The third protrusion surrounds to form a third receiving groove, and an adhesive is disposed in the third receiving groove. The fourth capturing part includes a fourth substrate and a fourth protrusion disposed on the top of the fourth substrate and connected end to end. The fourth protrusion surrounds to form a fourth receiving groove, and an adhesive is disposed in the fourth receiving groove. A second passage is provided on the side of the fourth substrate near the third substrate for the target insect to pass through.

[0010] Optionally, the second substrate is provided with a socket and a connector at its corner, and the fourth substrate is provided with a connector adapted to the socket and a socket adapted to the connector at its corner.

[0011] Optionally, the top of the first protrusion is a horizontal first abutment surface, the bottom of the second protrusion is a horizontal second abutment surface, the top of the third protrusion is a horizontal third abutment surface, and the bottom of the fourth protrusion is a horizontal fourth abutment surface. When the first insect and rodent trapping plate and the second insect and rodent trapping plate are inserted, the first abutment surface contacts the third abutment surface, and the second abutment surface contacts the fourth abutment surface.

[0012] Optionally, the connector includes a cylindrical body and a plug hole disposed on the top of the cylindrical body, the connector being cylindrical and capable of being plugged into the plug hole.

[0013] Optionally, the insect and rodent catching device has three states. In the first state, the second catching part is erected and forms an angle of 80°-100° with the first catching part. In the second state, the second catching part is laid flat. In the third state, the first insect and rodent catching plate and the second insect and rodent catching plate are inserted into each other.

[0014] Compared with the prior art, the advantages of this application are: This invention utilizes a first insect and rodent trapping plate, comprising: an integrally formed first trapping part and a second trapping part. Two second trapping parts are located on opposite sides of the first trapping part and are rotatable relative to the sides of the first trapping part. The first trapping part includes a first substrate and a first protrusion connected end-to-end on the top of the first substrate, forming a first receiving groove containing an adhesive. The second trapping part includes a second substrate and a second protrusion connected end-to-end on the top of the second substrate, forming a second receiving groove containing an adhesive. A [missing information - likely a design element] is provided on the side of the second substrate closest to the first substrate. The first channel for the target insects to pass through can fold the second trapping section into an upright state. When a rodent steps on the first trapping section, it will touch the sticky substance and be captured. When the rodent struggles to the sides of the first trapping section, it will touch the sticky substance in the second trapping section, thus increasing the success rate of capturing the rodent. After the target insects pass through the first channel and enter the first trapping section, they will be captured by the sticky substance. This application uses the foldable second trapping section to form physical barriers on both sides in the upright state. When the rodent struggles in the first trapping section, it touches the sticky substance on both sides, increasing the success rate of capturing it. At the same time, the first channel guides the insects into the first trapping section, realizing the dual functions of preventing rodent escape and directional insect capture, solving the problem of rodents easily jumping and escaping with traditional sticky traps. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0016] Figure 1 This is an isometric view of the first insect and rodent catching plate in the insect and rodent catching device of this utility model; Figure 2This is an isometric view of another state of the first insect and rodent catching plate in the insect and rodent catching device of this utility model; Figure 3 This is an isometric view of the first and second insect and rodent catching plates in the insect and rodent catching device of this utility model when they are connected. Figure 4 This is a front view of the insect and rodent catching device of the present invention when the first and second insect and rodent catching plates are inserted together. Figure 5 This is an isometric view of the second insect and rodent trapping plate in this utility model; Figure label: 100. First insect and rodent trapping plate; 110. First trapping part; 111. First base plate; 112. First protrusion; 113. First receiving groove; 114. Inclined guide surface; 115. Vertical wall; 120. Second trapping part; 121. Second base plate; 122. Second protrusion; 123. Second receiving groove; 124. First through groove; 125. Guide plate; 130. Reinforcing rib; 140. Plug-in socket; 141. Columnar body; 142. Plug-in hole; 150. Plug-in connector; 200. Second insect and rodent trapping plate; 210. Third trapping part; 211. Third base plate; 212. Third protrusion; 213. Third receiving groove; 220. Fourth trapping part; 221. Fourth base plate; 222. Fourth protrusion; 223. Fourth receiving groove; 224. Second through groove; 300, First contact surface; 301, Second contact surface; 302, Third contact surface; 303, Fourth contact surface. Detailed Implementation

[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0018] It should be noted that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," "back," "side," and "circumferential" used in this utility model to indicate the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first" and "second" are only used to distinguish multiple parts or structures with the same or similar structures, and do not indicate any special limitation on the arrangement order or connection relationship.

[0019] Please refer to Figures 1 to 5 This utility model provides an insect and rodent trapping device, including: a first insect and rodent trapping plate 100, the first insect and rodent trapping plate 100 including: an integrally formed first trapping part 110 and a second trapping part 120, the second trapping part 120 having two parts, located on opposite sides of the first trapping part 110 and foldable upward relative to the first trapping part 110; wherein, the first trapping part 110 includes a first base plate 111 and a first protrusion 112 disposed on the top of the first base plate 111 and connected end to end, the first protrusion 112 forming a first receiving groove 113, the first receiving groove 113 being provided with an adhesive (not shown in the figure), the adhesive being glue; the second trapping part 120 includes a second base plate 121 and a second protrusion 122 disposed on the top of the second base plate 121 and connected end to end, the second protrusion 122 forming a second receiving groove 123, the second receiving groove 123 being provided with an adhesive, the second base plate 121 having a first through groove 124 for target insects to pass through on the side near the first base plate 111; The second capturing part 120 can be folded into an upright position. When a rodent steps into the first receiving groove 113, it will touch the sticky substance and be captured. When the rodent struggles to either side of the first capturing part 110, it will touch the sticky substance in the second receiving groove 123, thus increasing the success rate of rodent capture. After the target insect enters the first receiving groove 113 through the first passage 124, it will be further captured by the sticky substance. The first capturing part 110 refers to a plate-like structure for capturing insects and rodents. Specifically, it can be made of plastic or cardboard material as a substrate with a raised structure on the top. The raised structure surrounds and forms a receiving groove filled with a sticky colloid, which restricts the movement of insects and rodents. In some embodiments, the first substrate and the second substrate are connected by a folding hinge.

[0020] The first protrusion 112 refers to the continuously arranged protruding structure on the top of the substrate, which can be integrally molded using injection molding. The second capturing part 120 refers to a rotatable auxiliary capturing structure, which can be achieved by using a hinge or by cutting a groove at the connection between the first capturing part 110 and the second capturing part 120. The extreme position of rotation is limited by the sharp angle formed by the intersection of the two surfaces, so that the included angle between the first capturing part 110 and the second capturing part 120 is not less than 70 degrees. The second substrate 121 is provided with a second protrusion 122 to form a second receiving groove 123 and is filled with adhesive. By folding and standing upright, a physical barrier is formed to restrict the lateral escape of rodents. The first through groove 124 refers to the opening structure on the side of the second capturing part 120 near the first capturing part 110. It can be achieved by cutting a rectangular or arc-shaped notch on the substrate using a stamping process. The width of the notch is smaller than the size of a rodent but allows the target insect to pass through. The insect is guided into the second receiving groove 123 through a directional channel and captured by the adhesive. The target insects can be cockroaches, ants, bedbugs, etc. Furthermore, when the ground needs to be cleaned, the second capturing part 120 can stand upright to prevent debris and dust on the ground from falling into the first receiving groove 113 and the second receiving groove 123, and the first protrusion 112 can also prevent debris and dust on the ground from falling into the first receiving groove 113. The first capturing part 110 and the second capturing part 120 are integrally formed.

[0021] This application utilizes a foldable second trapping section 120 to form physical barriers on both sides when the trap is upright. When a rodent struggles in the first trapping section 110, it touches the sticky material on both sides and is captured. At the same time, the first channel 124 guides insects into the second containment slot 123, achieving the dual functions of preventing rodent escape and directional capture of insects, thus solving the problem of rodents easily jumping and escaping with traditional sticky traps.

[0022] In this embodiment, multiple first through slots 124 are provided along the length direction of the second capturing part 120, and guide plates 125 for guiding target insects into the first receiving slot 113 are provided on both sides of the first through slots 124. Furthermore, multiple independent inlets are formed by the first through slots 124 spaced apart along the length direction of the second capturing part 120, and the guide plates 125 on both sides of each inlet form a guiding structure.

[0023] Specifically, when the target insect moves along the surface of the second substrate 121, a plurality of first through slots 124 form a continuous inlet array. When the insect enters the through slot and contacts the guide plate 125, the insect moves along the direction of the guide plate 125 and enters the first receiving slot 113.

[0024] In this embodiment, the outer sidewall of the first protrusion 112 is formed with an inclined guide surface 114 for guiding the target insect into the first receiving groove 113, and the inner sidewall of the first protrusion 112 is a vertical wall 115 to prevent the target insect from crawling out of the first receiving groove 113. Furthermore, the inclined guide surface 114 forms an inclination angle of 15°-45° with the horizontal plane, and the surface of the guide surface may be provided with anti-slip texture or a frosted finish; the wall surface of the vertical wall 115 forms an angle of 85°-90° with the bottom surface of the first receiving groove 113. The inclined guide surface 114 and the guide plate 125 form a continuous guiding path.

[0025] Specifically, when the target insect moves along the guide plate 125 to the area of ​​the first protrusion 112, the inclined guide surface 114 guides the insect towards the first receiving groove 113 by its slope, and the surface treatment increases the contact friction to prevent slippage. After the insect enters the first receiving groove 113 and comes into contact with the adhesive, the vertical wall 115 forms a physical barrier.

[0026] In this embodiment, reinforcing ribs 130 are provided at the bottom of both the first substrate 111 and the second substrate 121. Further, the reinforcing ribs 130 can be configured as a mesh structure or parallel strip structures, and the reinforcing ribs 130 are integrally formed with the bottom surface of the substrate through an injection molding process.

[0027] Specifically, when rodents step on the first substrate 111 or insects crawl on the surface of the second substrate 121, the bottom reinforcing ribs 130 disperse local stress through a multi-directionally distributed support structure, preventing the substrate from bending and deforming.

[0028] In this embodiment, a connector 140 and / or a connector 150 adapted to the connector 140 are provided at the corner of the second substrate 121. The height of the connector 140 is greater than the height of the second protrusion 122. Furthermore, the height of the connector 140 is designed to exceed the top plane of the second protrusion 122, so that the connector 150 can completely avoid the vertical wall 115 structure of the second protrusion 122 when inserted. The connector 140 and the connector 150 adopt a mating form of a columnar body 141 and a connector hole 142. The depth of the connector hole 142 is greater than the length of the connector 150, ensuring that a stable planar contact is formed between the capture plates after insertion.

[0029] In this embodiment, a second insect and rodent trapping plate 200 is included. The second insect and rodent trapping plate 200 includes an integrally formed third trapping part 210 and a fourth trapping part 220. The fourth trapping part 220 has two parts, located on opposite sides of the third trapping part 210, and can be folded upward relative to the third trapping part 210. The third trapping part 210 includes a third base plate 211 and a third protrusion 212 disposed on the top of the third base plate 211 and connected end to end. The third protrusion 212 surrounds to form a third receiving groove 213, and an adhesive is disposed in the third receiving groove 213. The fourth capturing unit 220 includes a fourth substrate 221 and a fourth protrusion 222 disposed on the top of the fourth substrate 221 and connected end to end. The fourth protrusion 222 surrounds to form a fourth receiving groove 223. An adhesive is disposed in the fourth receiving groove 223. A second passage 224 for the target insect to pass through is provided on the side of the fourth substrate 221 near the third substrate 211. Further, a plug-in seat 140 and a plug-in connector 150 are provided at the corners of the second substrate 121, and a plug-in connector 150 adapted to the plug-in seat 140 and a plug-in seat 140 adapted to the plug-in connector 150 are provided at the corners of the fourth substrate 221. The top of the first protrusion 112 is a horizontal first abutment surface 300, the bottom of the second protrusion 122 is a horizontal second abutment surface 301, the top of the third protrusion 212 is a horizontal third abutment surface 302, and the bottom of the fourth protrusion 222 is a horizontal fourth abutment surface 303. When the first insect and rodent trapping plate 100 and the second insect and rodent trapping plate 200 are inserted, the first abutment surface 300 contacts the third abutment surface 302, and the second abutment surface 301 contacts the fourth abutment surface 303. Furthermore, the plug-in base 140 and the plug-in connector 150 adopt a complementary structural design. The plug-in base 140 includes a columnar body 141 and a top insertion hole 142, and the plug-in connector 150 is a columnar solid. The two are connected through insertion. The positions of the plug-in base 140 and the plug-in connector 150 are interchangeable, allowing the second substrate 121 and the fourth substrate 221 to be bidirectionally inserted at the corners. The height of the connector 140 is greater than the height of the second protrusion 122, ensuring that the contact surfaces of the second protrusion 122 and the fourth protrusion 222 remain in contact after insertion.

[0030] Specifically, when the first insect and rodent trapping plate 100 and the second insect and rodent trapping plate 200 need to be packaged and transported, the plug-in base 140 and the plug-in connector 150 are inserted into the plug-in hole 142 through the columnar body 141 to complete the insertion. After insertion, the second abutting surface 301 of the second protrusion 122 contacts the fourth abutting surface 303 of the fourth protrusion 222. When connecting the first insect and rodent trapping plate 100 and the second insect and rodent trapping plate 200, the first receiving groove 113 and the third receiving groove 213, and the second receiving groove 123 and the fourth receiving groove 223 can be combined to form a closed space to prevent sticky materials from flowing out.

[0031] In this embodiment, the connector 140 includes a cylindrical body 141 and a connector hole 142 disposed on the top of the cylindrical body 141. The connector 150 is cylindrical and can be inserted into the connector hole 142. Further, the cylindrical body 141 is a vertically extending cylindrical structure with the connector hole 142 at its top. The connector 150 is a cylinder with a diameter matching the inner diameter of the connector hole 142, and its end is chamfered for easy insertion. The axes of the cylindrical body 141 and the connector 150 coincide, forming an axial limit after insertion. A surface contact is formed between the inner wall of the connector hole 142 and the outer wall of the connector 150. In this embodiment, the insect and rodent trapping device has three states. In the first state, the second trapping part 120 is erected, forming an angle of 80°-100° with the first trapping part 110. In the second state, the second trapping part 120 is laid flat. In the third state, the first insect and rodent trapping plate 100 and the second insect and rodent trapping plate 200 are plugged in. Furthermore, in the first state, the erected second trapping part 120 forms a blocking structure, forcing rodents to contact the sticky material on both sides while struggling, increasing the capture success rate. In the second state, the laid-flat second trapping part 120 increases the ground coverage area, increasing the probability of rodent contact. In the third state, the plugging in allows for the combination and expansion of multiple trapping plates.

[0032] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the substance of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. An insect and rodent trapping device, characterized in that, include: The first insect and rodent trapping plate (100) includes: an integrally formed first trapping part (110) and a second trapping part (120). The second trapping part (120) has two parts, located on opposite sides of the first trapping part (110) and can be folded upward relative to the first trapping part (110). The first capturing part (110) includes a first substrate (111) and a first protrusion (112) disposed on the top of the first substrate (111) and connected end to end. The first protrusion (112) surrounds to form a first receiving groove (113), and an adhesive is disposed in the first receiving groove (113). The second capturing part (120) includes a second substrate (121) and a second protrusion (122) disposed on the top of the second substrate (121) and connected end to end. The second protrusion (122) surrounds to form a second receiving groove (123). The second receiving groove (123) is provided with an adhesive. The second substrate (121) is provided with a first through groove (124) for the target insect to pass through on the side near the first substrate (111). The second capturing part (120) can be folded into an upright state. When a rat steps into the first receiving groove (113), it will touch the sticky substance and be captured. When the rat struggles to the sides of the first capturing part (110), it will touch the sticky substance in the second receiving groove (123), thereby increasing the success rate of capturing rats. After the target insect enters the first receiving groove (113) through the first passage (124), it will be captured by the sticky substance.

2. The insect and rodent trapping device as described in claim 1, characterized in that, The first through groove (124) is provided with a plurality of grooves along the length of the second capture part (120), and guide plates (125) are provided on both sides of the first through groove (124) for guiding the target insects into the first containment groove (113).

3. The insect and rodent trapping device as described in claim 2, characterized in that, The outer side wall of the first protrusion (112) is formed with an inclined guide surface (114) for guiding the target insect into the first receiving groove (113), and the inner side wall of the first protrusion (112) is a vertical wall (115) to prevent the target insect from crawling out of the first receiving groove (113).

4. The insect and rodent trapping device as described in claim 3, characterized in that, The bottom of both the first substrate (111) and the second substrate (121) is provided with reinforcing ribs (130).

5. The insect and rodent trapping device as described in claim 4, characterized in that, The second substrate (121) is provided with a plug-in seat (140) and / or a plug connector (150) adapted to the plug-in seat (140) at its corner, and the height of the plug-in seat (140) is greater than the height of the second protrusion (122).

6. The insect and rodent trapping device as described in claim 5, characterized in that, The device includes a second insect and rodent trapping plate (200), which includes an integrally formed third trapping part (210) and a fourth trapping part (220). The fourth trapping part (220) has two parts located on opposite sides of the third trapping part (210) and can be folded upward relative to the third trapping part (210). The third trapping part (210) includes a third base plate (211) and a third protrusion (212) disposed on the top of the third base plate (211) and connected end to end. The third protrusion (212) surrounds to form a third receiving groove (213), and an adhesive is disposed in the third receiving groove (213). The fourth capturing part (220) includes a fourth substrate (221) and a fourth protrusion (222) disposed on the top of the fourth substrate (221) and connected end to end. The fourth protrusion (222) surrounds to form a fourth receiving groove (223). The fourth receiving groove (223) is provided with an adhesive. The fourth substrate (221) is provided with a second passage (224) for the target insect to pass through on the side near the third substrate (211).

7. The insect and rodent trapping device as described in claim 6, characterized in that, The second substrate (121) is provided with a socket (140) and a connector (150) at its corners, and the fourth substrate (221) is provided with a connector (150) adapted to the socket (140) and a socket (140) adapted to the connector (150) at its corners.

8. The insect and rodent trapping device as described in claim 6, characterized in that, The top of the first protrusion (112) is a horizontal first abutment surface (300), the bottom of the second protrusion (122) is a horizontal second abutment surface (301), the top of the third protrusion (212) is a horizontal third abutment surface (302), and the bottom of the fourth protrusion (222) is a horizontal fourth abutment surface (303). When the first insect and rodent trapping plate (100) and the second insect and rodent trapping plate (200) are inserted, the first abutment surface (300) contacts the third abutment surface (302), and the second abutment surface (301) contacts the fourth abutment surface (303).

9. The insect and rodent trapping device as described in claim 5, characterized in that, The plug-in socket (140) includes a columnar body (141) and a plug-in hole (142) disposed on the top of the columnar body (141). The plug-in connector (150) is columnar and can be plugged into the plug-in hole (142).

10. The insect and rodent trapping device as described in claim 8, characterized in that, The insect and rodent catching device has three states. In the first state, the second catching part (120) is erected and forms an angle of 80°-100° with the first catching part (110). In the second state, the second catching part (120) is laid flat. In the third state, the first insect and rodent catching plate (100) and the second insect and rodent catching plate (200) are inserted together.